首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Mechanism of interaction between human serum albumin and N-alkyl phenothiazines studied using spectroscopic methods.
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Mechanism of interaction between human serum albumin and N-alkyl phenothiazines studied using spectroscopic methods.

机译:使用光谱方法研究人血清白蛋白与N-烷基吩噻嗪之间的相互作用机理。

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摘要

The binding characteristics of human serum albumin (HSA) with N-alkyl phenothiazines derivatives (NAP) viz., levomepromazine monomaleate (LMM) and propericiazine (PPC) have been studied by employing fluorescence, absorption, circular dichroism and FT-IR techniques. The Stern-Volmer quenching constant, K(SV) values were found to decrease with increase in temperature thereby indicating the presence of static quenching mechanism in the interactions of NAP with HSA. The number of binding sites, n and the binding constant, K were noticed to be, respectively, 1.11 and (5.188+/-0.034)x10(4) M(-1) for LMM and 1.06 and (4.436+/-0.066)x10(4) M(-1) for PPC at 298 K. The negative value of enthalpy change and positive value of entropy change in the present study indicated that the hydrophobic forces played a major role in the binding of NAP to HSA. The circular dichroism and FT-IR spectral data revealed the conformational changes in the structure of protein upon its interaction with NAP. The binding distances and the energy transfer efficiency between NAP and protein were determined based on Forster's theory of energy transfer. The decreased binding constants of HAS-LMM and HAS-PPC systems in presence of common ions indicated the availability of higher concentration of free drug in plasma.
机译:已经通过采用荧光,吸收,圆二色性和FT-IR技术研究了人血清白蛋白(HSA)与N-烷基吩噻嗪衍生物(NAP)即左旋丙嗪单马来酸酯(LMM)和丙哌嗪(PPC)的结合特性。发现Stern-Volmer淬灭常数K(SV)值随温度升高而降低,从而表明NAP与HSA相互作用中存在静态淬灭机制。对于LMM,结合位点数n和结合常数K分别为1.11和(5.188 +/- 0.034)x10(4)M(-1),而1.06和(4.436 +/- 0.066) PPC在298 K时为x10(4)M(-1)。在本研究中,焓变的负值和熵变的正值表明疏水力在NAP与HSA的结合中起主要作用。圆二色性和FT-IR光谱数据揭示了蛋白质与NAP相互作用后其结构的构象变化。 NAP和蛋白质之间的结合距离和能量转移效率是根据Forster的能量转移理论确定的。在存在共同离子的情况下,HAS-LMM和HAS-PPC系统的结合常数降低,表明血浆中游离药物浓度更高。

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